if_ethersubr.c revision 1.285 1 1.285 ozaki /* $NetBSD: if_ethersubr.c,v 1.285 2020/08/28 06:23:42 ozaki-r Exp $ */
2 1.44 itojun
3 1.44 itojun /*
4 1.44 itojun * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
5 1.44 itojun * All rights reserved.
6 1.120 perry *
7 1.44 itojun * Redistribution and use in source and binary forms, with or without
8 1.44 itojun * modification, are permitted provided that the following conditions
9 1.44 itojun * are met:
10 1.44 itojun * 1. Redistributions of source code must retain the above copyright
11 1.44 itojun * notice, this list of conditions and the following disclaimer.
12 1.44 itojun * 2. Redistributions in binary form must reproduce the above copyright
13 1.44 itojun * notice, this list of conditions and the following disclaimer in the
14 1.44 itojun * documentation and/or other materials provided with the distribution.
15 1.44 itojun * 3. Neither the name of the project nor the names of its contributors
16 1.44 itojun * may be used to endorse or promote products derived from this software
17 1.44 itojun * without specific prior written permission.
18 1.120 perry *
19 1.44 itojun * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
20 1.44 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.44 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.44 itojun * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
23 1.44 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.44 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.44 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.44 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.44 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.44 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.44 itojun * SUCH DAMAGE.
30 1.44 itojun */
31 1.9 cgd
32 1.1 cgd /*
33 1.8 mycroft * Copyright (c) 1982, 1989, 1993
34 1.8 mycroft * The Regents of the University of California. All rights reserved.
35 1.1 cgd *
36 1.1 cgd * Redistribution and use in source and binary forms, with or without
37 1.1 cgd * modification, are permitted provided that the following conditions
38 1.1 cgd * are met:
39 1.1 cgd * 1. Redistributions of source code must retain the above copyright
40 1.1 cgd * notice, this list of conditions and the following disclaimer.
41 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
42 1.1 cgd * notice, this list of conditions and the following disclaimer in the
43 1.1 cgd * documentation and/or other materials provided with the distribution.
44 1.113 agc * 3. Neither the name of the University nor the names of its contributors
45 1.1 cgd * may be used to endorse or promote products derived from this software
46 1.1 cgd * without specific prior written permission.
47 1.1 cgd *
48 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 1.1 cgd * SUCH DAMAGE.
59 1.1 cgd *
60 1.27 fvdl * @(#)if_ethersubr.c 8.2 (Berkeley) 4/4/96
61 1.1 cgd */
62 1.90 lukem
63 1.90 lukem #include <sys/cdefs.h>
64 1.285 ozaki __KERNEL_RCSID(0, "$NetBSD: if_ethersubr.c,v 1.285 2020/08/28 06:23:42 ozaki-r Exp $");
65 1.1 cgd
66 1.212 pooka #ifdef _KERNEL_OPT
67 1.33 jonathan #include "opt_inet.h"
68 1.33 jonathan #include "opt_atalk.h"
69 1.112 martin #include "opt_mbuftrace.h"
70 1.182 kefren #include "opt_mpls.h"
71 1.30 matt #include "opt_gateway.h"
72 1.135 pavel #include "opt_pppoe.h"
73 1.206 ozaki #include "opt_net_mpsafe.h"
74 1.212 pooka #endif
75 1.212 pooka
76 1.59 thorpej #include "vlan.h"
77 1.81 martin #include "pppoe.h"
78 1.78 thorpej #include "bridge.h"
79 1.93 martin #include "arp.h"
80 1.121 yamt #include "agr.h"
81 1.30 matt
82 1.200 joerg #include <sys/sysctl.h>
83 1.4 mycroft #include <sys/mbuf.h>
84 1.211 ozaki #include <sys/mutex.h>
85 1.4 mycroft #include <sys/ioctl.h>
86 1.4 mycroft #include <sys/errno.h>
87 1.158 dyoung #include <sys/device.h>
88 1.284 riastrad #include <sys/entropy.h>
89 1.207 riastrad #include <sys/rndsource.h>
90 1.216 ozaki #include <sys/cpu.h>
91 1.231 ozaki #include <sys/kmem.h>
92 1.8 mycroft
93 1.4 mycroft #include <net/if.h>
94 1.4 mycroft #include <net/netisr.h>
95 1.4 mycroft #include <net/route.h>
96 1.4 mycroft #include <net/if_llc.h>
97 1.4 mycroft #include <net/if_dl.h>
98 1.8 mycroft #include <net/if_types.h>
99 1.211 ozaki #include <net/pktqueue.h>
100 1.93 martin
101 1.158 dyoung #include <net/if_media.h>
102 1.158 dyoung #include <dev/mii/mii.h>
103 1.158 dyoung #include <dev/mii/miivar.h>
104 1.158 dyoung
105 1.93 martin #if NARP == 0
106 1.93 martin /*
107 1.102 jmmv * XXX there should really be a way to issue this warning from within config(8)
108 1.93 martin */
109 1.111 martin #error You have included NETATALK or a pseudo-device in your configuration that depends on the presence of ethernet interfaces, but have no such interfaces configured. Check if you really need pseudo-device bridge, pppoe, vlan or options NETATALK.
110 1.93 martin #endif
111 1.1 cgd
112 1.69 thorpej #include <net/bpf.h>
113 1.69 thorpej
114 1.22 is #include <net/if_ether.h>
115 1.59 thorpej #include <net/if_vlanvar.h>
116 1.22 is
117 1.81 martin #if NPPPOE > 0
118 1.81 martin #include <net/if_pppoe.h>
119 1.81 martin #endif
120 1.81 martin
121 1.121 yamt #if NAGR > 0
122 1.121 yamt #include <net/agr/ieee8023_slowprotocols.h> /* XXX */
123 1.121 yamt #include <net/agr/ieee8023ad.h>
124 1.121 yamt #include <net/agr/if_agrvar.h>
125 1.121 yamt #endif
126 1.121 yamt
127 1.78 thorpej #if NBRIDGE > 0
128 1.78 thorpej #include <net/if_bridgevar.h>
129 1.78 thorpej #endif
130 1.78 thorpej
131 1.15 phil #include <netinet/in.h>
132 1.1 cgd #ifdef INET
133 1.4 mycroft #include <netinet/in_var.h>
134 1.1 cgd #endif
135 1.22 is #include <netinet/if_inarp.h>
136 1.1 cgd
137 1.44 itojun #ifdef INET6
138 1.44 itojun #ifndef INET
139 1.44 itojun #include <netinet/in.h>
140 1.44 itojun #endif
141 1.44 itojun #include <netinet6/in6_var.h>
142 1.44 itojun #include <netinet6/nd6.h>
143 1.44 itojun #endif
144 1.44 itojun
145 1.133 liamjfoy #include "carp.h"
146 1.133 liamjfoy #if NCARP > 0
147 1.133 liamjfoy #include <netinet/ip_carp.h>
148 1.133 liamjfoy #endif
149 1.133 liamjfoy
150 1.23 christos #ifdef NETATALK
151 1.23 christos #include <netatalk/at.h>
152 1.23 christos #include <netatalk/at_var.h>
153 1.23 christos #include <netatalk/at_extern.h>
154 1.23 christos
155 1.23 christos #define llc_snap_org_code llc_un.type_snap.org_code
156 1.23 christos #define llc_snap_ether_type llc_un.type_snap.ether_type
157 1.23 christos
158 1.23 christos extern u_char at_org_code[3];
159 1.23 christos extern u_char aarp_org_code[3];
160 1.23 christos #endif /* NETATALK */
161 1.23 christos
162 1.182 kefren #ifdef MPLS
163 1.182 kefren #include <netmpls/mpls.h>
164 1.182 kefren #include <netmpls/mpls_var.h>
165 1.182 kefren #endif
166 1.182 kefren
167 1.278 msaitoh #ifdef DIAGNOSTIC
168 1.123 matt static struct timeval bigpktppslim_last;
169 1.123 matt static int bigpktppslim = 2; /* XXX */
170 1.123 matt static int bigpktpps_count;
171 1.203 ozaki static kmutex_t bigpktpps_lock __cacheline_aligned;
172 1.278 msaitoh #endif
173 1.123 matt
174 1.118 yamt const uint8_t etherbroadcastaddr[ETHER_ADDR_LEN] =
175 1.118 yamt { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
176 1.121 yamt const uint8_t ethermulticastaddr_slowprotocols[ETHER_ADDR_LEN] =
177 1.121 yamt { 0x01, 0x80, 0xc2, 0x00, 0x00, 0x02 };
178 1.8 mycroft #define senderr(e) { error = (e); goto bad;}
179 1.1 cgd
180 1.261 maxv static int ether_output(struct ifnet *, struct mbuf *,
181 1.261 maxv const struct sockaddr *, const struct rtentry *);
182 1.42 thorpej
183 1.1 cgd /*
184 1.1 cgd * Ethernet output routine.
185 1.1 cgd * Encapsulate a packet of type family for the local net.
186 1.22 is * Assumes that ifp is actually pointer to ethercom structure.
187 1.1 cgd */
188 1.42 thorpej static int
189 1.178 dyoung ether_output(struct ifnet * const ifp0, struct mbuf * const m0,
190 1.256 maxv const struct sockaddr * const dst, const struct rtentry *rt)
191 1.1 cgd {
192 1.256 maxv uint8_t esrc[ETHER_ADDR_LEN], edst[ETHER_ADDR_LEN];
193 1.162 matt uint16_t etype = 0;
194 1.122 christos int error = 0, hdrcmplt = 0;
195 1.29 mrg struct mbuf *m = m0;
196 1.151 dyoung struct mbuf *mcopy = NULL;
197 1.29 mrg struct ether_header *eh;
198 1.133 liamjfoy struct ifnet *ifp = ifp0;
199 1.24 christos #ifdef INET
200 1.22 is struct arphdr *ah;
201 1.260 maxv #endif
202 1.23 christos #ifdef NETATALK
203 1.23 christos struct at_ifaddr *aa;
204 1.260 maxv #endif
205 1.1 cgd
206 1.104 matt #ifdef MBUFTRACE
207 1.116 jonathan m_claimm(m, ifp->if_mowner);
208 1.104 matt #endif
209 1.133 liamjfoy
210 1.133 liamjfoy #if NCARP > 0
211 1.133 liamjfoy if (ifp->if_type == IFT_CARP) {
212 1.133 liamjfoy struct ifaddr *ifa;
213 1.227 ozaki int s = pserialize_read_enter();
214 1.133 liamjfoy
215 1.133 liamjfoy /* loop back if this is going to the carp interface */
216 1.133 liamjfoy if (dst != NULL && ifp0->if_link_state == LINK_STATE_UP &&
217 1.227 ozaki (ifa = ifa_ifwithaddr(dst)) != NULL) {
218 1.227 ozaki if (ifa->ifa_ifp == ifp0) {
219 1.227 ozaki pserialize_read_exit(s);
220 1.227 ozaki return looutput(ifp0, m, dst, rt);
221 1.227 ozaki }
222 1.227 ozaki }
223 1.227 ozaki pserialize_read_exit(s);
224 1.133 liamjfoy
225 1.133 liamjfoy ifp = ifp->if_carpdev;
226 1.133 liamjfoy /* ac = (struct arpcom *)ifp; */
227 1.133 liamjfoy
228 1.247 msaitoh if ((ifp0->if_flags & (IFF_UP | IFF_RUNNING)) !=
229 1.247 msaitoh (IFF_UP | IFF_RUNNING))
230 1.133 liamjfoy senderr(ENETDOWN);
231 1.133 liamjfoy }
232 1.260 maxv #endif
233 1.133 liamjfoy
234 1.247 msaitoh if ((ifp->if_flags & (IFF_UP | IFF_RUNNING)) != (IFF_UP | IFF_RUNNING))
235 1.8 mycroft senderr(ENETDOWN);
236 1.72 thorpej
237 1.1 cgd switch (dst->sa_family) {
238 1.1 cgd
239 1.1 cgd #ifdef INET
240 1.1 cgd case AF_INET:
241 1.261 maxv if (m->m_flags & M_BCAST) {
242 1.256 maxv memcpy(edst, etherbroadcastaddr, sizeof(edst));
243 1.261 maxv } else if (m->m_flags & M_MCAST) {
244 1.145 dyoung ETHER_MAP_IP_MULTICAST(&satocsin(dst)->sin_addr, edst);
245 1.261 maxv } else {
246 1.281 kardel error = arpresolve(ifp0, rt, m, dst, edst, sizeof(edst));
247 1.260 maxv if (error)
248 1.260 maxv return (error == EWOULDBLOCK) ? 0 : error;
249 1.224 knakahar }
250 1.3 hpeyerl /* If broadcasting on a simplex interface, loopback a copy */
251 1.3 hpeyerl if ((m->m_flags & M_BCAST) && (ifp->if_flags & IFF_SIMPLEX))
252 1.266 maxv mcopy = m_copypacket(m, M_DONTWAIT);
253 1.17 mycroft etype = htons(ETHERTYPE_IP);
254 1.8 mycroft break;
255 1.22 is
256 1.22 is case AF_ARP:
257 1.22 is ah = mtod(m, struct arphdr *);
258 1.261 maxv if (m->m_flags & M_BCAST) {
259 1.256 maxv memcpy(edst, etherbroadcastaddr, sizeof(edst));
260 1.261 maxv } else {
261 1.147 christos void *tha = ar_tha(ah);
262 1.131 mrg
263 1.173 christos if (tha == NULL) {
264 1.258 maxv /* fake with ARPHRD_IEEE1394 */
265 1.236 maxv m_freem(m);
266 1.173 christos return 0;
267 1.173 christos }
268 1.146 dyoung memcpy(edst, tha, sizeof(edst));
269 1.131 mrg }
270 1.120 perry
271 1.22 is ah->ar_hrd = htons(ARPHRD_ETHER);
272 1.22 is
273 1.107 itojun switch (ntohs(ah->ar_op)) {
274 1.22 is case ARPOP_REVREQUEST:
275 1.22 is case ARPOP_REVREPLY:
276 1.22 is etype = htons(ETHERTYPE_REVARP);
277 1.22 is break;
278 1.22 is
279 1.22 is case ARPOP_REQUEST:
280 1.22 is case ARPOP_REPLY:
281 1.22 is default:
282 1.22 is etype = htons(ETHERTYPE_ARP);
283 1.22 is }
284 1.22 is break;
285 1.1 cgd #endif
286 1.256 maxv
287 1.44 itojun #ifdef INET6
288 1.44 itojun case AF_INET6:
289 1.261 maxv if (m->m_flags & M_BCAST) {
290 1.256 maxv memcpy(edst, etherbroadcastaddr, sizeof(edst));
291 1.261 maxv } else if (m->m_flags & M_MCAST) {
292 1.238 ozaki ETHER_MAP_IPV6_MULTICAST(&satocsin6(dst)->sin6_addr,
293 1.238 ozaki edst);
294 1.238 ozaki } else {
295 1.281 kardel error = nd6_resolve(ifp0, rt, m, dst, edst,
296 1.238 ozaki sizeof(edst));
297 1.261 maxv if (error)
298 1.261 maxv return (error == EWOULDBLOCK) ? 0 : error;
299 1.51 itojun }
300 1.44 itojun etype = htons(ETHERTYPE_IPV6);
301 1.44 itojun break;
302 1.44 itojun #endif
303 1.256 maxv
304 1.23 christos #ifdef NETATALK
305 1.250 maxv case AF_APPLETALK: {
306 1.227 ozaki struct ifaddr *ifa;
307 1.227 ozaki int s;
308 1.227 ozaki
309 1.224 knakahar KERNEL_LOCK(1, NULL);
310 1.256 maxv
311 1.226 rjs if (!aarpresolve(ifp, m, (const struct sockaddr_at *)dst, edst)) {
312 1.224 knakahar KERNEL_UNLOCK_ONE(NULL);
313 1.261 maxv return 0;
314 1.23 christos }
315 1.256 maxv
316 1.23 christos /*
317 1.23 christos * ifaddr is the first thing in at_ifaddr
318 1.23 christos */
319 1.227 ozaki s = pserialize_read_enter();
320 1.227 ozaki ifa = at_ifawithnet((const struct sockaddr_at *)dst, ifp);
321 1.227 ozaki if (ifa == NULL) {
322 1.227 ozaki pserialize_read_exit(s);
323 1.227 ozaki KERNEL_UNLOCK_ONE(NULL);
324 1.260 maxv senderr(EADDRNOTAVAIL);
325 1.224 knakahar }
326 1.227 ozaki aa = (struct at_ifaddr *)ifa;
327 1.120 perry
328 1.23 christos /*
329 1.23 christos * In the phase 2 case, we need to prepend an mbuf for the
330 1.265 maxv * llc header.
331 1.23 christos */
332 1.23 christos if (aa->aa_flags & AFA_PHASE2) {
333 1.23 christos struct llc llc;
334 1.23 christos
335 1.43 bouyer M_PREPEND(m, sizeof(struct llc), M_DONTWAIT);
336 1.256 maxv if (m == NULL) {
337 1.260 maxv pserialize_read_exit(s);
338 1.256 maxv KERNEL_UNLOCK_ONE(NULL);
339 1.256 maxv senderr(ENOBUFS);
340 1.256 maxv }
341 1.256 maxv
342 1.23 christos llc.llc_dsap = llc.llc_ssap = LLC_SNAP_LSAP;
343 1.23 christos llc.llc_control = LLC_UI;
344 1.146 dyoung memcpy(llc.llc_snap_org_code, at_org_code,
345 1.23 christos sizeof(llc.llc_snap_org_code));
346 1.38 kim llc.llc_snap_ether_type = htons(ETHERTYPE_ATALK);
347 1.147 christos memcpy(mtod(m, void *), &llc, sizeof(struct llc));
348 1.23 christos } else {
349 1.38 kim etype = htons(ETHERTYPE_ATALK);
350 1.23 christos }
351 1.227 ozaki pserialize_read_exit(s);
352 1.224 knakahar KERNEL_UNLOCK_ONE(NULL);
353 1.23 christos break;
354 1.250 maxv }
355 1.23 christos #endif /* NETATALK */
356 1.256 maxv
357 1.31 thorpej case pseudo_AF_HDRCMPLT:
358 1.31 thorpej hdrcmplt = 1;
359 1.146 dyoung memcpy(esrc,
360 1.146 dyoung ((const struct ether_header *)dst->sa_data)->ether_shost,
361 1.146 dyoung sizeof(esrc));
362 1.31 thorpej /* FALLTHROUGH */
363 1.31 thorpej
364 1.1 cgd case AF_UNSPEC:
365 1.250 maxv memcpy(edst,
366 1.146 dyoung ((const struct ether_header *)dst->sa_data)->ether_dhost,
367 1.146 dyoung sizeof(edst));
368 1.8 mycroft /* AF_UNSPEC doesn't swap the byte order of the ether_type. */
369 1.145 dyoung etype = ((const struct ether_header *)dst->sa_data)->ether_type;
370 1.8 mycroft break;
371 1.1 cgd
372 1.1 cgd default:
373 1.21 christos printf("%s: can't handle af%d\n", ifp->if_xname,
374 1.261 maxv dst->sa_family);
375 1.8 mycroft senderr(EAFNOSUPPORT);
376 1.1 cgd }
377 1.1 cgd
378 1.182 kefren #ifdef MPLS
379 1.210 ozaki {
380 1.210 ozaki struct m_tag *mtag;
381 1.271 maxv mtag = m_tag_find(m, PACKET_TAG_MPLS);
382 1.210 ozaki if (mtag != NULL) {
383 1.210 ozaki /* Having the tag itself indicates it's MPLS */
384 1.184 dyoung etype = htons(ETHERTYPE_MPLS);
385 1.210 ozaki m_tag_delete(m, mtag);
386 1.210 ozaki }
387 1.184 dyoung }
388 1.182 kefren #endif
389 1.182 kefren
390 1.1 cgd if (mcopy)
391 1.145 dyoung (void)looutput(ifp, mcopy, dst, rt);
392 1.16 mycroft
393 1.256 maxv KASSERT((m->m_flags & M_PKTHDR) != 0);
394 1.256 maxv
395 1.256 maxv /*
396 1.256 maxv * If no ether type is set, this must be a 802.2 formatted packet.
397 1.50 matt */
398 1.50 matt if (etype == 0)
399 1.50 matt etype = htons(m->m_pkthdr.len);
400 1.256 maxv
401 1.1 cgd /*
402 1.256 maxv * Add local net header. If no space in first mbuf, allocate another.
403 1.1 cgd */
404 1.256 maxv M_PREPEND(m, sizeof(struct ether_header), M_DONTWAIT);
405 1.256 maxv if (m == NULL)
406 1.8 mycroft senderr(ENOBUFS);
407 1.256 maxv
408 1.1 cgd eh = mtod(m, struct ether_header *);
409 1.96 thorpej /* Note: etype is already in network byte order. */
410 1.256 maxv memcpy(&eh->ether_type, &etype, sizeof(eh->ether_type));
411 1.250 maxv memcpy(eh->ether_dhost, edst, sizeof(edst));
412 1.261 maxv if (hdrcmplt) {
413 1.146 dyoung memcpy(eh->ether_shost, esrc, sizeof(eh->ether_shost));
414 1.261 maxv } else {
415 1.153 dyoung memcpy(eh->ether_shost, CLLADDR(ifp->if_sadl),
416 1.31 thorpej sizeof(eh->ether_shost));
417 1.261 maxv }
418 1.77 thorpej
419 1.133 liamjfoy #if NCARP > 0
420 1.133 liamjfoy if (ifp0 != ifp && ifp0->if_type == IFT_CARP) {
421 1.153 dyoung memcpy(eh->ether_shost, CLLADDR(ifp0->if_sadl),
422 1.133 liamjfoy sizeof(eh->ether_shost));
423 1.133 liamjfoy }
424 1.256 maxv #endif
425 1.133 liamjfoy
426 1.195 rmind if ((error = pfil_run_hooks(ifp->if_pfil, &m, ifp, PFIL_OUT)) != 0)
427 1.261 maxv return error;
428 1.77 thorpej if (m == NULL)
429 1.261 maxv return 0;
430 1.77 thorpej
431 1.78 thorpej #if NBRIDGE > 0
432 1.78 thorpej /*
433 1.78 thorpej * Bridges require special output handling.
434 1.78 thorpej */
435 1.78 thorpej if (ifp->if_bridge)
436 1.256 maxv return bridge_output(ifp, m, NULL, NULL);
437 1.78 thorpej #endif
438 1.78 thorpej
439 1.133 liamjfoy #if NCARP > 0
440 1.133 liamjfoy if (ifp != ifp0)
441 1.282 thorpej if_statadd(ifp0, if_obytes, m->m_pkthdr.len + ETHER_HDR_LEN);
442 1.256 maxv #endif
443 1.133 liamjfoy
444 1.77 thorpej #ifdef ALTQ
445 1.224 knakahar KERNEL_LOCK(1, NULL);
446 1.77 thorpej /*
447 1.77 thorpej * If ALTQ is enabled on the parent interface, do
448 1.77 thorpej * classification; the queueing discipline might not
449 1.77 thorpej * require classification, but might require the
450 1.77 thorpej * address family/header pointer in the pktattr.
451 1.77 thorpej */
452 1.77 thorpej if (ALTQ_IS_ENABLED(&ifp->if_snd))
453 1.220 knakahar altq_etherclassify(&ifp->if_snd, m);
454 1.224 knakahar KERNEL_UNLOCK_ONE(NULL);
455 1.77 thorpej #endif
456 1.221 knakahar return ifq_enqueue(ifp, m);
457 1.1 cgd
458 1.1 cgd bad:
459 1.1 cgd if (m)
460 1.1 cgd m_freem(m);
461 1.261 maxv return error;
462 1.1 cgd }
463 1.76 thorpej
464 1.76 thorpej #ifdef ALTQ
465 1.76 thorpej /*
466 1.76 thorpej * This routine is a slight hack to allow a packet to be classified
467 1.76 thorpej * if the Ethernet headers are present. It will go away when ALTQ's
468 1.76 thorpej * classification engine understands link headers.
469 1.261 maxv *
470 1.261 maxv * XXX: We may need to do m_pullups here. First to ensure struct ether_header
471 1.261 maxv * is indeed contiguous, then to read the LLC and so on.
472 1.76 thorpej */
473 1.76 thorpej void
474 1.220 knakahar altq_etherclassify(struct ifaltq *ifq, struct mbuf *m)
475 1.76 thorpej {
476 1.76 thorpej struct ether_header *eh;
477 1.255 maxv struct mbuf *mtop = m;
478 1.162 matt uint16_t ether_type;
479 1.76 thorpej int hlen, af, hdrsize;
480 1.147 christos void *hdr;
481 1.76 thorpej
482 1.255 maxv KASSERT((mtop->m_flags & M_PKTHDR) != 0);
483 1.255 maxv
484 1.76 thorpej hlen = ETHER_HDR_LEN;
485 1.76 thorpej eh = mtod(m, struct ether_header *);
486 1.76 thorpej
487 1.76 thorpej ether_type = htons(eh->ether_type);
488 1.76 thorpej
489 1.76 thorpej if (ether_type < ETHERMTU) {
490 1.76 thorpej /* LLC/SNAP */
491 1.76 thorpej struct llc *llc = (struct llc *)(eh + 1);
492 1.76 thorpej hlen += 8;
493 1.76 thorpej
494 1.76 thorpej if (m->m_len < hlen ||
495 1.76 thorpej llc->llc_dsap != LLC_SNAP_LSAP ||
496 1.76 thorpej llc->llc_ssap != LLC_SNAP_LSAP ||
497 1.76 thorpej llc->llc_control != LLC_UI) {
498 1.76 thorpej /* Not SNAP. */
499 1.76 thorpej goto bad;
500 1.76 thorpej }
501 1.76 thorpej
502 1.76 thorpej ether_type = htons(llc->llc_un.type_snap.ether_type);
503 1.76 thorpej }
504 1.76 thorpej
505 1.76 thorpej switch (ether_type) {
506 1.76 thorpej case ETHERTYPE_IP:
507 1.76 thorpej af = AF_INET;
508 1.76 thorpej hdrsize = 20; /* sizeof(struct ip) */
509 1.76 thorpej break;
510 1.76 thorpej
511 1.76 thorpej case ETHERTYPE_IPV6:
512 1.76 thorpej af = AF_INET6;
513 1.76 thorpej hdrsize = 40; /* sizeof(struct ip6_hdr) */
514 1.76 thorpej break;
515 1.76 thorpej
516 1.76 thorpej default:
517 1.76 thorpej af = AF_UNSPEC;
518 1.76 thorpej hdrsize = 0;
519 1.76 thorpej break;
520 1.76 thorpej }
521 1.76 thorpej
522 1.95 itojun while (m->m_len <= hlen) {
523 1.95 itojun hlen -= m->m_len;
524 1.95 itojun m = m->m_next;
525 1.255 maxv if (m == NULL)
526 1.255 maxv goto bad;
527 1.95 itojun }
528 1.255 maxv
529 1.76 thorpej if (m->m_len < (hlen + hdrsize)) {
530 1.76 thorpej /*
531 1.95 itojun * protocol header not in a single mbuf.
532 1.95 itojun * We can't cope with this situation right
533 1.76 thorpej * now (but it shouldn't ever happen, really, anyhow).
534 1.76 thorpej */
535 1.92 itojun #ifdef DEBUG
536 1.78 thorpej printf("altq_etherclassify: headers span multiple mbufs: "
537 1.78 thorpej "%d < %d\n", m->m_len, (hlen + hdrsize));
538 1.92 itojun #endif
539 1.76 thorpej goto bad;
540 1.76 thorpej }
541 1.76 thorpej
542 1.76 thorpej m->m_data += hlen;
543 1.76 thorpej m->m_len -= hlen;
544 1.76 thorpej
545 1.147 christos hdr = mtod(m, void *);
546 1.76 thorpej
547 1.255 maxv if (ALTQ_NEEDS_CLASSIFY(ifq)) {
548 1.255 maxv mtop->m_pkthdr.pattr_class =
549 1.76 thorpej (*ifq->altq_classify)(ifq->altq_clfier, m, af);
550 1.255 maxv }
551 1.255 maxv mtop->m_pkthdr.pattr_af = af;
552 1.255 maxv mtop->m_pkthdr.pattr_hdr = hdr;
553 1.76 thorpej
554 1.76 thorpej m->m_data -= hlen;
555 1.76 thorpej m->m_len += hlen;
556 1.76 thorpej
557 1.76 thorpej return;
558 1.76 thorpej
559 1.250 maxv bad:
560 1.255 maxv mtop->m_pkthdr.pattr_class = NULL;
561 1.255 maxv mtop->m_pkthdr.pattr_hdr = NULL;
562 1.255 maxv mtop->m_pkthdr.pattr_af = AF_UNSPEC;
563 1.76 thorpej }
564 1.76 thorpej #endif /* ALTQ */
565 1.1 cgd
566 1.1 cgd /*
567 1.1 cgd * Process a received Ethernet packet;
568 1.42 thorpej * the packet is in the mbuf chain m with
569 1.42 thorpej * the ether header.
570 1.1 cgd */
571 1.133 liamjfoy void
572 1.58 matt ether_input(struct ifnet *ifp, struct mbuf *m)
573 1.1 cgd {
574 1.91 thorpej struct ethercom *ec = (struct ethercom *) ifp;
575 1.199 rmind pktqueue_t *pktq = NULL;
576 1.199 rmind struct ifqueue *inq = NULL;
577 1.162 matt uint16_t etype;
578 1.42 thorpej struct ether_header *eh;
579 1.187 matt size_t ehlen;
580 1.204 tls static int earlypkts;
581 1.198 msaitoh int isr = 0;
582 1.194 joerg #if defined (LLC) || defined(NETATALK)
583 1.29 mrg struct llc *l;
584 1.18 christos #endif
585 1.1 cgd
586 1.216 ozaki KASSERT(!cpu_intr_p());
587 1.253 maxv KASSERT((m->m_flags & M_PKTHDR) != 0);
588 1.216 ozaki
589 1.8 mycroft if ((ifp->if_flags & IFF_UP) == 0) {
590 1.8 mycroft m_freem(m);
591 1.8 mycroft return;
592 1.8 mycroft }
593 1.267 maxv if (m->m_len < sizeof(*eh)) {
594 1.267 maxv m = m_pullup(m, sizeof(*eh));
595 1.267 maxv if (m == NULL)
596 1.267 maxv return;
597 1.267 maxv }
598 1.42 thorpej
599 1.104 matt #ifdef MBUFTRACE
600 1.116 jonathan m_claimm(m, &ec->ec_rx_mowner);
601 1.104 matt #endif
602 1.42 thorpej eh = mtod(m, struct ether_header *);
603 1.63 thorpej etype = ntohs(eh->ether_type);
604 1.187 matt ehlen = sizeof(*eh);
605 1.63 thorpej
606 1.284 riastrad if (__predict_false(earlypkts < 100 ||
607 1.284 riastrad entropy_epoch() == (unsigned)-1)) {
608 1.204 tls rnd_add_data(NULL, eh, ehlen, 0);
609 1.204 tls earlypkts++;
610 1.204 tls }
611 1.204 tls
612 1.63 thorpej /*
613 1.258 maxv * Determine if the packet is within its size limits. For MPLS the
614 1.258 maxv * header length is variable, so we skip the check.
615 1.63 thorpej */
616 1.182 kefren if (etype != ETHERTYPE_MPLS && m->m_pkthdr.len >
617 1.83 thorpej ETHER_MAX_FRAME(ifp, etype, m->m_flags & M_HASFCS)) {
618 1.278 msaitoh #ifdef DIAGNOSTIC
619 1.203 ozaki mutex_enter(&bigpktpps_lock);
620 1.123 matt if (ppsratecheck(&bigpktppslim_last, &bigpktpps_count,
621 1.261 maxv bigpktppslim)) {
622 1.123 matt printf("%s: discarding oversize frame (len=%d)\n",
623 1.123 matt ifp->if_xname, m->m_pkthdr.len);
624 1.123 matt }
625 1.203 ozaki mutex_exit(&bigpktpps_lock);
626 1.278 msaitoh #endif
627 1.282 thorpej if_statinc(ifp, if_iqdrops);
628 1.63 thorpej m_freem(m);
629 1.63 thorpej return;
630 1.63 thorpej }
631 1.77 thorpej
632 1.84 thorpej if (ETHER_IS_MULTICAST(eh->ether_dhost)) {
633 1.84 thorpej /*
634 1.84 thorpej * If this is not a simplex interface, drop the packet
635 1.84 thorpej * if it came from us.
636 1.84 thorpej */
637 1.84 thorpej if ((ifp->if_flags & IFF_SIMPLEX) == 0 &&
638 1.153 dyoung memcmp(CLLADDR(ifp->if_sadl), eh->ether_shost,
639 1.84 thorpej ETHER_ADDR_LEN) == 0) {
640 1.84 thorpej m_freem(m);
641 1.84 thorpej return;
642 1.84 thorpej }
643 1.84 thorpej
644 1.84 thorpej if (memcmp(etherbroadcastaddr,
645 1.84 thorpej eh->ether_dhost, ETHER_ADDR_LEN) == 0)
646 1.84 thorpej m->m_flags |= M_BCAST;
647 1.84 thorpej else
648 1.84 thorpej m->m_flags |= M_MCAST;
649 1.282 thorpej if_statinc(ifp, if_imcasts);
650 1.84 thorpej }
651 1.84 thorpej
652 1.79 thorpej /* If the CRC is still on the packet, trim it off. */
653 1.79 thorpej if (m->m_flags & M_HASFCS) {
654 1.79 thorpej m_adj(m, -ETHER_CRC_LEN);
655 1.79 thorpej m->m_flags &= ~M_HASFCS;
656 1.79 thorpej }
657 1.79 thorpej
658 1.282 thorpej if_statadd(ifp, if_ibytes, m->m_pkthdr.len);
659 1.78 thorpej
660 1.201 ozaki #if NCARP > 0
661 1.201 ozaki if (__predict_false(ifp->if_carp && ifp->if_type != IFT_CARP)) {
662 1.201 ozaki /*
663 1.261 maxv * Clear M_PROMISC, in case the packet comes from a
664 1.261 maxv * vlan.
665 1.201 ozaki */
666 1.137 rpaulo m->m_flags &= ~M_PROMISC;
667 1.201 ozaki if (carp_input(m, (uint8_t *)&eh->ether_shost,
668 1.201 ozaki (uint8_t *)&eh->ether_dhost, eh->ether_type) == 0)
669 1.137 rpaulo return;
670 1.201 ozaki }
671 1.253 maxv #endif
672 1.250 maxv
673 1.247 msaitoh if ((m->m_flags & (M_BCAST | M_MCAST | M_PROMISC)) == 0 &&
674 1.201 ozaki (ifp->if_flags & IFF_PROMISC) != 0 &&
675 1.201 ozaki memcmp(CLLADDR(ifp->if_sadl), eh->ether_dhost,
676 1.261 maxv ETHER_ADDR_LEN) != 0) {
677 1.201 ozaki m->m_flags |= M_PROMISC;
678 1.70 bouyer }
679 1.78 thorpej
680 1.106 bouyer if ((m->m_flags & M_PROMISC) == 0) {
681 1.195 rmind if (pfil_run_hooks(ifp->if_pfil, &m, ifp, PFIL_IN) != 0)
682 1.106 bouyer return;
683 1.106 bouyer if (m == NULL)
684 1.106 bouyer return;
685 1.78 thorpej
686 1.106 bouyer eh = mtod(m, struct ether_header *);
687 1.106 bouyer etype = ntohs(eh->ether_type);
688 1.106 bouyer }
689 1.70 bouyer
690 1.172 darran #if NAGR > 0
691 1.172 darran if (ifp->if_agrprivate &&
692 1.172 darran __predict_true(etype != ETHERTYPE_SLOWPROTOCOLS)) {
693 1.172 darran m->m_flags &= ~M_PROMISC;
694 1.172 darran agr_input(ifp, m);
695 1.172 darran return;
696 1.172 darran }
697 1.253 maxv #endif
698 1.172 darran
699 1.91 thorpej /*
700 1.91 thorpej * If VLANs are configured on the interface, check to
701 1.91 thorpej * see if the device performed the decapsulation and
702 1.91 thorpej * provided us with the tag.
703 1.91 thorpej */
704 1.244 knakahar if (ec->ec_nvlans && vlan_has_tag(m)) {
705 1.70 bouyer #if NVLAN > 0
706 1.70 bouyer /*
707 1.70 bouyer * vlan_input() will either recursively call ether_input()
708 1.70 bouyer * or drop the packet.
709 1.70 bouyer */
710 1.91 thorpej vlan_input(ifp, m);
711 1.91 thorpej #else
712 1.91 thorpej m_freem(m);
713 1.70 bouyer #endif
714 1.61 thorpej return;
715 1.61 thorpej }
716 1.1 cgd
717 1.59 thorpej /*
718 1.59 thorpej * Handle protocols that expect to have the Ethernet header
719 1.59 thorpej * (and possibly FCS) intact.
720 1.59 thorpej */
721 1.59 thorpej switch (etype) {
722 1.187 matt case ETHERTYPE_VLAN: {
723 1.187 matt struct ether_vlan_header *evl = (void *)eh;
724 1.253 maxv
725 1.187 matt /*
726 1.187 matt * If there is a tag of 0, then the VLAN header was probably
727 1.187 matt * just being used to store the priority. Extract the ether
728 1.250 maxv * type, and if IP or IPV6, let them deal with it.
729 1.187 matt */
730 1.254 maxv if (m->m_len >= sizeof(*evl) &&
731 1.253 maxv EVL_VLANOFTAG(evl->evl_tag) == 0) {
732 1.187 matt etype = ntohs(evl->evl_proto);
733 1.187 matt ehlen = sizeof(*evl);
734 1.253 maxv if ((m->m_flags & M_PROMISC) == 0 &&
735 1.253 maxv (etype == ETHERTYPE_IP ||
736 1.253 maxv etype == ETHERTYPE_IPV6))
737 1.187 matt break;
738 1.187 matt }
739 1.253 maxv
740 1.59 thorpej #if NVLAN > 0
741 1.59 thorpej /*
742 1.59 thorpej * vlan_input() will either recursively call ether_input()
743 1.59 thorpej * or drop the packet.
744 1.59 thorpej */
745 1.253 maxv if (ec->ec_nvlans != 0)
746 1.63 thorpej vlan_input(ifp, m);
747 1.65 enami else
748 1.253 maxv #endif
749 1.65 enami m_freem(m);
750 1.253 maxv
751 1.59 thorpej return;
752 1.187 matt }
753 1.253 maxv
754 1.81 martin #if NPPPOE > 0
755 1.81 martin case ETHERTYPE_PPPOEDISC:
756 1.218 ozaki pppoedisc_input(ifp, m);
757 1.218 ozaki return;
758 1.253 maxv
759 1.81 martin case ETHERTYPE_PPPOE:
760 1.218 ozaki pppoe_input(ifp, m);
761 1.81 martin return;
762 1.253 maxv #endif
763 1.253 maxv
764 1.121 yamt case ETHERTYPE_SLOWPROTOCOLS: {
765 1.121 yamt uint8_t subtype;
766 1.121 yamt
767 1.263 maxv if (m->m_pkthdr.len < sizeof(*eh) + sizeof(subtype)) {
768 1.263 maxv m_freem(m);
769 1.263 maxv return;
770 1.263 maxv }
771 1.253 maxv
772 1.121 yamt m_copydata(m, sizeof(*eh), sizeof(subtype), &subtype);
773 1.121 yamt switch (subtype) {
774 1.121 yamt #if NAGR > 0
775 1.121 yamt case SLOWPROTOCOLS_SUBTYPE_LACP:
776 1.121 yamt if (ifp->if_agrprivate) {
777 1.121 yamt ieee8023ad_lacp_input(ifp, m);
778 1.121 yamt return;
779 1.121 yamt }
780 1.121 yamt break;
781 1.121 yamt
782 1.121 yamt case SLOWPROTOCOLS_SUBTYPE_MARKER:
783 1.121 yamt if (ifp->if_agrprivate) {
784 1.121 yamt ieee8023ad_marker_input(ifp, m);
785 1.121 yamt return;
786 1.121 yamt }
787 1.121 yamt break;
788 1.261 maxv #endif
789 1.253 maxv
790 1.121 yamt default:
791 1.121 yamt if (subtype == 0 || subtype > 10) {
792 1.121 yamt /* illegal value */
793 1.121 yamt m_freem(m);
794 1.121 yamt return;
795 1.121 yamt }
796 1.121 yamt /* unknown subtype */
797 1.121 yamt break;
798 1.121 yamt }
799 1.121 yamt }
800 1.273 mrg /* FALLTHROUGH */
801 1.59 thorpej default:
802 1.106 bouyer if (m->m_flags & M_PROMISC) {
803 1.106 bouyer m_freem(m);
804 1.106 bouyer return;
805 1.106 bouyer }
806 1.59 thorpej }
807 1.42 thorpej
808 1.45 thorpej /* If the CRC is still on the packet, trim it off. */
809 1.79 thorpej if (m->m_flags & M_HASFCS) {
810 1.45 thorpej m_adj(m, -ETHER_CRC_LEN);
811 1.79 thorpej m->m_flags &= ~M_HASFCS;
812 1.79 thorpej }
813 1.42 thorpej
814 1.253 maxv if (etype > ETHERMTU + sizeof(struct ether_header)) {
815 1.139 is /* Strip off the Ethernet header. */
816 1.187 matt m_adj(m, ehlen);
817 1.139 is
818 1.139 is switch (etype) {
819 1.1 cgd #ifdef INET
820 1.139 is case ETHERTYPE_IP:
821 1.30 matt #ifdef GATEWAY
822 1.139 is if (ipflow_fastforward(m))
823 1.139 is return;
824 1.30 matt #endif
825 1.199 rmind pktq = ip_pktq;
826 1.139 is break;
827 1.1 cgd
828 1.139 is case ETHERTYPE_ARP:
829 1.198 msaitoh isr = NETISR_ARP;
830 1.139 is inq = &arpintrq;
831 1.139 is break;
832 1.7 glass
833 1.139 is case ETHERTYPE_REVARP:
834 1.139 is revarpinput(m); /* XXX queue? */
835 1.139 is return;
836 1.1 cgd #endif
837 1.253 maxv
838 1.44 itojun #ifdef INET6
839 1.139 is case ETHERTYPE_IPV6:
840 1.196 pooka if (__predict_false(!in6_present)) {
841 1.196 pooka m_freem(m);
842 1.196 pooka return;
843 1.196 pooka }
844 1.250 maxv #ifdef GATEWAY
845 1.192 christos if (ip6flow_fastforward(&m))
846 1.148 liamjfoy return;
847 1.148 liamjfoy #endif
848 1.199 rmind pktq = ip6_pktq;
849 1.139 is break;
850 1.44 itojun #endif
851 1.253 maxv
852 1.23 christos #ifdef NETATALK
853 1.174 isaki case ETHERTYPE_ATALK:
854 1.198 msaitoh isr = NETISR_ATALK;
855 1.174 isaki inq = &atintrq1;
856 1.174 isaki break;
857 1.253 maxv
858 1.174 isaki case ETHERTYPE_AARP:
859 1.253 maxv aarpinput(ifp, m); /* XXX queue? */
860 1.174 isaki return;
861 1.253 maxv #endif
862 1.253 maxv
863 1.182 kefren #ifdef MPLS
864 1.182 kefren case ETHERTYPE_MPLS:
865 1.198 msaitoh isr = NETISR_MPLS;
866 1.182 kefren inq = &mplsintrq;
867 1.182 kefren break;
868 1.182 kefren #endif
869 1.253 maxv
870 1.139 is default:
871 1.139 is m_freem(m);
872 1.139 is return;
873 1.139 is }
874 1.139 is } else {
875 1.254 maxv KASSERT(ehlen == sizeof(*eh));
876 1.194 joerg #if defined (LLC) || defined (NETATALK)
877 1.254 maxv if (m->m_len < sizeof(*eh) + sizeof(struct llc)) {
878 1.249 maxv goto dropanyway;
879 1.249 maxv }
880 1.139 is l = (struct llc *)(eh+1);
881 1.254 maxv
882 1.8 mycroft switch (l->llc_dsap) {
883 1.23 christos #ifdef NETATALK
884 1.23 christos case LLC_SNAP_LSAP:
885 1.23 christos switch (l->llc_control) {
886 1.23 christos case LLC_UI:
887 1.23 christos if (l->llc_ssap != LLC_SNAP_LSAP) {
888 1.23 christos goto dropanyway;
889 1.23 christos }
890 1.120 perry
891 1.166 dyoung if (memcmp(&(l->llc_snap_org_code)[0],
892 1.23 christos at_org_code, sizeof(at_org_code)) == 0 &&
893 1.23 christos ntohs(l->llc_snap_ether_type) ==
894 1.38 kim ETHERTYPE_ATALK) {
895 1.23 christos inq = &atintrq2;
896 1.139 is m_adj(m, sizeof(struct ether_header)
897 1.139 is + sizeof(struct llc));
898 1.198 msaitoh isr = NETISR_ATALK;
899 1.23 christos break;
900 1.23 christos }
901 1.23 christos
902 1.166 dyoung if (memcmp(&(l->llc_snap_org_code)[0],
903 1.23 christos aarp_org_code,
904 1.23 christos sizeof(aarp_org_code)) == 0 &&
905 1.23 christos ntohs(l->llc_snap_ether_type) ==
906 1.23 christos ETHERTYPE_AARP) {
907 1.254 maxv m_adj(m, sizeof(struct ether_header)
908 1.139 is + sizeof(struct llc));
909 1.261 maxv aarpinput(ifp, m); /* XXX queue? */
910 1.254 maxv return;
911 1.23 christos }
912 1.120 perry
913 1.23 christos default:
914 1.23 christos goto dropanyway;
915 1.23 christos }
916 1.23 christos break;
917 1.249 maxv #endif
918 1.1 cgd dropanyway:
919 1.1 cgd default:
920 1.8 mycroft m_freem(m);
921 1.8 mycroft return;
922 1.8 mycroft }
923 1.250 maxv #else /* LLC || NETATALK */
924 1.139 is m_freem(m);
925 1.139 is return;
926 1.250 maxv #endif /* LLC || NETATALK */
927 1.1 cgd }
928 1.1 cgd
929 1.199 rmind if (__predict_true(pktq)) {
930 1.229 ozaki #ifdef NET_MPSAFE
931 1.229 ozaki const u_int h = curcpu()->ci_index;
932 1.229 ozaki #else
933 1.199 rmind const uint32_t h = pktq_rps_hash(m);
934 1.229 ozaki #endif
935 1.199 rmind if (__predict_false(!pktq_enqueue(pktq, m, h))) {
936 1.199 rmind m_freem(m);
937 1.199 rmind }
938 1.199 rmind return;
939 1.199 rmind }
940 1.199 rmind
941 1.199 rmind if (__predict_false(!inq)) {
942 1.199 rmind /* Should not happen. */
943 1.199 rmind m_freem(m);
944 1.199 rmind return;
945 1.199 rmind }
946 1.228 ozaki
947 1.285 ozaki IFQ_ENQUEUE_ISR(inq, m, isr);
948 1.1 cgd }
949 1.1 cgd
950 1.1 cgd /*
951 1.1 cgd * Convert Ethernet address to printable (loggable) representation.
952 1.1 cgd */
953 1.1 cgd char *
954 1.58 matt ether_sprintf(const u_char *ap)
955 1.1 cgd {
956 1.129 christos static char etherbuf[3 * ETHER_ADDR_LEN];
957 1.129 christos return ether_snprintf(etherbuf, sizeof(etherbuf), ap);
958 1.129 christos }
959 1.129 christos
960 1.129 christos char *
961 1.129 christos ether_snprintf(char *buf, size_t len, const u_char *ap)
962 1.129 christos {
963 1.129 christos char *cp = buf;
964 1.129 christos size_t i;
965 1.1 cgd
966 1.129 christos for (i = 0; i < len / 3; i++) {
967 1.124 christos *cp++ = hexdigits[*ap >> 4];
968 1.124 christos *cp++ = hexdigits[*ap++ & 0xf];
969 1.1 cgd *cp++ = ':';
970 1.1 cgd }
971 1.129 christos *--cp = '\0';
972 1.129 christos return buf;
973 1.1 cgd }
974 1.8 mycroft
975 1.8 mycroft /*
976 1.8 mycroft * Perform common duties while attaching to interface list
977 1.8 mycroft */
978 1.8 mycroft void
979 1.162 matt ether_ifattach(struct ifnet *ifp, const uint8_t *lla)
980 1.8 mycroft {
981 1.104 matt struct ethercom *ec = (struct ethercom *)ifp;
982 1.8 mycroft
983 1.8 mycroft ifp->if_type = IFT_ETHER;
984 1.94 enami ifp->if_hdrlen = ETHER_HDR_LEN;
985 1.73 thorpej ifp->if_dlt = DLT_EN10MB;
986 1.8 mycroft ifp->if_mtu = ETHERMTU;
987 1.12 mycroft ifp->if_output = ether_output;
988 1.216 ozaki ifp->_if_input = ether_input;
989 1.54 thorpej if (ifp->if_baudrate == 0)
990 1.54 thorpej ifp->if_baudrate = IF_Mbps(10); /* just a default */
991 1.75 thorpej
992 1.230 ozaki if (lla != NULL)
993 1.230 ozaki if_set_sadl(ifp, lla, ETHER_ADDR_LEN, !ETHER_IS_LOCAL(lla));
994 1.75 thorpej
995 1.104 matt LIST_INIT(&ec->ec_multiaddrs);
996 1.276 msaitoh SIMPLEQ_INIT(&ec->ec_vids);
997 1.233 ozaki ec->ec_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NET);
998 1.274 ozaki ec->ec_flags = 0;
999 1.26 is ifp->if_broadcastaddr = etherbroadcastaddr;
1000 1.177 joerg bpf_attach(ifp, DLT_EN10MB, sizeof(struct ether_header));
1001 1.104 matt #ifdef MBUFTRACE
1002 1.283 thorpej mowner_init_owner(&ec->ec_tx_mowner, ifp->if_xname, "tx");
1003 1.283 thorpej mowner_init_owner(&ec->ec_rx_mowner, ifp->if_xname, "rx");
1004 1.104 matt MOWNER_ATTACH(&ec->ec_tx_mowner);
1005 1.104 matt MOWNER_ATTACH(&ec->ec_rx_mowner);
1006 1.104 matt ifp->if_mowner = &ec->ec_tx_mowner;
1007 1.104 matt #endif
1008 1.52 thorpej }
1009 1.52 thorpej
1010 1.52 thorpej void
1011 1.58 matt ether_ifdetach(struct ifnet *ifp)
1012 1.52 thorpej {
1013 1.63 thorpej struct ethercom *ec = (void *) ifp;
1014 1.63 thorpej struct ether_multi *enm;
1015 1.69 thorpej
1016 1.269 ozaki IFNET_ASSERT_UNLOCKED(ifp);
1017 1.190 christos /*
1018 1.190 christos * Prevent further calls to ioctl (for example turning off
1019 1.190 christos * promiscuous mode from the bridge code), which eventually can
1020 1.190 christos * call if_init() which can cause panics because the interface
1021 1.190 christos * is in the process of being detached. Return device not configured
1022 1.190 christos * instead.
1023 1.190 christos */
1024 1.280 christos ifp->if_ioctl = __FPTRCAST(int (*)(struct ifnet *, u_long, void *),
1025 1.280 christos enxio);
1026 1.190 christos
1027 1.115 dyoung #if NBRIDGE > 0
1028 1.115 dyoung if (ifp->if_bridge)
1029 1.115 dyoung bridge_ifdetach(ifp);
1030 1.115 dyoung #endif
1031 1.177 joerg bpf_detach(ifp);
1032 1.64 thorpej #if NVLAN > 0
1033 1.64 thorpej if (ec->ec_nvlans)
1034 1.64 thorpej vlan_ifdetach(ifp);
1035 1.64 thorpej #endif
1036 1.63 thorpej
1037 1.245 msaitoh ETHER_LOCK(ec);
1038 1.276 msaitoh KASSERT(ec->ec_nvlans == 0);
1039 1.63 thorpej while ((enm = LIST_FIRST(&ec->ec_multiaddrs)) != NULL) {
1040 1.63 thorpej LIST_REMOVE(enm, enm_list);
1041 1.248 ozaki kmem_free(enm, sizeof(*enm));
1042 1.63 thorpej ec->ec_multicnt--;
1043 1.63 thorpej }
1044 1.245 msaitoh ETHER_UNLOCK(ec);
1045 1.52 thorpej
1046 1.252 maxv mutex_obj_free(ec->ec_lock);
1047 1.253 maxv ec->ec_lock = NULL;
1048 1.231 ozaki
1049 1.189 chs ifp->if_mowner = NULL;
1050 1.104 matt MOWNER_DETACH(&ec->ec_rx_mowner);
1051 1.104 matt MOWNER_DETACH(&ec->ec_tx_mowner);
1052 1.53 thorpej }
1053 1.53 thorpej
1054 1.56 thorpej #if 0
1055 1.56 thorpej /*
1056 1.56 thorpej * This is for reference. We have a table-driven version
1057 1.56 thorpej * of the little-endian crc32 generator, which is faster
1058 1.56 thorpej * than the double-loop.
1059 1.56 thorpej */
1060 1.162 matt uint32_t
1061 1.162 matt ether_crc32_le(const uint8_t *buf, size_t len)
1062 1.53 thorpej {
1063 1.162 matt uint32_t c, crc, carry;
1064 1.53 thorpej size_t i, j;
1065 1.53 thorpej
1066 1.53 thorpej crc = 0xffffffffU; /* initial value */
1067 1.53 thorpej
1068 1.53 thorpej for (i = 0; i < len; i++) {
1069 1.53 thorpej c = buf[i];
1070 1.53 thorpej for (j = 0; j < 8; j++) {
1071 1.53 thorpej carry = ((crc & 0x01) ? 1 : 0) ^ (c & 0x01);
1072 1.53 thorpej crc >>= 1;
1073 1.53 thorpej c >>= 1;
1074 1.53 thorpej if (carry)
1075 1.56 thorpej crc = (crc ^ ETHER_CRC_POLY_LE);
1076 1.53 thorpej }
1077 1.53 thorpej }
1078 1.53 thorpej
1079 1.53 thorpej return (crc);
1080 1.53 thorpej }
1081 1.56 thorpej #else
1082 1.162 matt uint32_t
1083 1.162 matt ether_crc32_le(const uint8_t *buf, size_t len)
1084 1.56 thorpej {
1085 1.162 matt static const uint32_t crctab[] = {
1086 1.56 thorpej 0x00000000, 0x1db71064, 0x3b6e20c8, 0x26d930ac,
1087 1.56 thorpej 0x76dc4190, 0x6b6b51f4, 0x4db26158, 0x5005713c,
1088 1.56 thorpej 0xedb88320, 0xf00f9344, 0xd6d6a3e8, 0xcb61b38c,
1089 1.56 thorpej 0x9b64c2b0, 0x86d3d2d4, 0xa00ae278, 0xbdbdf21c
1090 1.56 thorpej };
1091 1.162 matt uint32_t crc;
1092 1.98 thorpej size_t i;
1093 1.56 thorpej
1094 1.56 thorpej crc = 0xffffffffU; /* initial value */
1095 1.56 thorpej
1096 1.56 thorpej for (i = 0; i < len; i++) {
1097 1.56 thorpej crc ^= buf[i];
1098 1.56 thorpej crc = (crc >> 4) ^ crctab[crc & 0xf];
1099 1.56 thorpej crc = (crc >> 4) ^ crctab[crc & 0xf];
1100 1.56 thorpej }
1101 1.56 thorpej
1102 1.56 thorpej return (crc);
1103 1.56 thorpej }
1104 1.56 thorpej #endif
1105 1.53 thorpej
1106 1.162 matt uint32_t
1107 1.162 matt ether_crc32_be(const uint8_t *buf, size_t len)
1108 1.53 thorpej {
1109 1.162 matt uint32_t c, crc, carry;
1110 1.53 thorpej size_t i, j;
1111 1.53 thorpej
1112 1.53 thorpej crc = 0xffffffffU; /* initial value */
1113 1.53 thorpej
1114 1.53 thorpej for (i = 0; i < len; i++) {
1115 1.53 thorpej c = buf[i];
1116 1.53 thorpej for (j = 0; j < 8; j++) {
1117 1.53 thorpej carry = ((crc & 0x80000000U) ? 1 : 0) ^ (c & 0x01);
1118 1.53 thorpej crc <<= 1;
1119 1.53 thorpej c >>= 1;
1120 1.53 thorpej if (carry)
1121 1.53 thorpej crc = (crc ^ ETHER_CRC_POLY_BE) | carry;
1122 1.53 thorpej }
1123 1.53 thorpej }
1124 1.53 thorpej
1125 1.53 thorpej return (crc);
1126 1.8 mycroft }
1127 1.8 mycroft
1128 1.48 is #ifdef INET
1129 1.118 yamt const uint8_t ether_ipmulticast_min[ETHER_ADDR_LEN] =
1130 1.118 yamt { 0x01, 0x00, 0x5e, 0x00, 0x00, 0x00 };
1131 1.118 yamt const uint8_t ether_ipmulticast_max[ETHER_ADDR_LEN] =
1132 1.118 yamt { 0x01, 0x00, 0x5e, 0x7f, 0xff, 0xff };
1133 1.48 is #endif
1134 1.44 itojun #ifdef INET6
1135 1.118 yamt const uint8_t ether_ip6multicast_min[ETHER_ADDR_LEN] =
1136 1.118 yamt { 0x33, 0x33, 0x00, 0x00, 0x00, 0x00 };
1137 1.118 yamt const uint8_t ether_ip6multicast_max[ETHER_ADDR_LEN] =
1138 1.118 yamt { 0x33, 0x33, 0xff, 0xff, 0xff, 0xff };
1139 1.44 itojun #endif
1140 1.60 enami
1141 1.3 hpeyerl /*
1142 1.138 rpaulo * ether_aton implementation, not using a static buffer.
1143 1.138 rpaulo */
1144 1.138 rpaulo int
1145 1.180 christos ether_aton_r(u_char *dest, size_t len, const char *str)
1146 1.138 rpaulo {
1147 1.250 maxv const u_char *cp = (const void *)str;
1148 1.180 christos u_char *ep;
1149 1.180 christos
1150 1.185 tsutsui #define atox(c) (((c) <= '9') ? ((c) - '0') : ((toupper(c) - 'A') + 10))
1151 1.180 christos
1152 1.180 christos if (len < ETHER_ADDR_LEN)
1153 1.180 christos return ENOSPC;
1154 1.180 christos
1155 1.180 christos ep = dest + ETHER_ADDR_LEN;
1156 1.250 maxv
1157 1.180 christos while (*cp) {
1158 1.250 maxv if (!isxdigit(*cp))
1159 1.250 maxv return EINVAL;
1160 1.252 maxv
1161 1.180 christos *dest = atox(*cp);
1162 1.180 christos cp++;
1163 1.250 maxv if (isxdigit(*cp)) {
1164 1.250 maxv *dest = (*dest << 4) | atox(*cp);
1165 1.180 christos cp++;
1166 1.250 maxv }
1167 1.252 maxv dest++;
1168 1.252 maxv
1169 1.180 christos if (dest == ep)
1170 1.252 maxv return (*cp == '\0') ? 0 : ENAMETOOLONG;
1171 1.252 maxv
1172 1.180 christos switch (*cp) {
1173 1.180 christos case ':':
1174 1.180 christos case '-':
1175 1.180 christos case '.':
1176 1.179 jakllsch cp++;
1177 1.180 christos break;
1178 1.179 jakllsch }
1179 1.250 maxv }
1180 1.180 christos return ENOBUFS;
1181 1.138 rpaulo }
1182 1.138 rpaulo
1183 1.138 rpaulo /*
1184 1.60 enami * Convert a sockaddr into an Ethernet address or range of Ethernet
1185 1.60 enami * addresses.
1186 1.3 hpeyerl */
1187 1.3 hpeyerl int
1188 1.162 matt ether_multiaddr(const struct sockaddr *sa, uint8_t addrlo[ETHER_ADDR_LEN],
1189 1.162 matt uint8_t addrhi[ETHER_ADDR_LEN])
1190 1.3 hpeyerl {
1191 1.24 christos #ifdef INET
1192 1.155 dyoung const struct sockaddr_in *sin;
1193 1.261 maxv #endif
1194 1.44 itojun #ifdef INET6
1195 1.155 dyoung const struct sockaddr_in6 *sin6;
1196 1.261 maxv #endif
1197 1.3 hpeyerl
1198 1.60 enami switch (sa->sa_family) {
1199 1.3 hpeyerl
1200 1.3 hpeyerl case AF_UNSPEC:
1201 1.146 dyoung memcpy(addrlo, sa->sa_data, ETHER_ADDR_LEN);
1202 1.146 dyoung memcpy(addrhi, addrlo, ETHER_ADDR_LEN);
1203 1.3 hpeyerl break;
1204 1.3 hpeyerl
1205 1.3 hpeyerl #ifdef INET
1206 1.3 hpeyerl case AF_INET:
1207 1.155 dyoung sin = satocsin(sa);
1208 1.3 hpeyerl if (sin->sin_addr.s_addr == INADDR_ANY) {
1209 1.3 hpeyerl /*
1210 1.60 enami * An IP address of INADDR_ANY means listen to
1211 1.60 enami * or stop listening to all of the Ethernet
1212 1.60 enami * multicast addresses used for IP.
1213 1.3 hpeyerl * (This is for the sake of IP multicast routers.)
1214 1.3 hpeyerl */
1215 1.146 dyoung memcpy(addrlo, ether_ipmulticast_min, ETHER_ADDR_LEN);
1216 1.146 dyoung memcpy(addrhi, ether_ipmulticast_max, ETHER_ADDR_LEN);
1217 1.252 maxv } else {
1218 1.3 hpeyerl ETHER_MAP_IP_MULTICAST(&sin->sin_addr, addrlo);
1219 1.146 dyoung memcpy(addrhi, addrlo, ETHER_ADDR_LEN);
1220 1.3 hpeyerl }
1221 1.3 hpeyerl break;
1222 1.3 hpeyerl #endif
1223 1.44 itojun #ifdef INET6
1224 1.44 itojun case AF_INET6:
1225 1.155 dyoung sin6 = satocsin6(sa);
1226 1.47 itojun if (IN6_IS_ADDR_UNSPECIFIED(&sin6->sin6_addr)) {
1227 1.44 itojun /*
1228 1.60 enami * An IP6 address of 0 means listen to or stop
1229 1.60 enami * listening to all of the Ethernet multicast
1230 1.60 enami * address used for IP6.
1231 1.44 itojun * (This is used for multicast routers.)
1232 1.44 itojun */
1233 1.146 dyoung memcpy(addrlo, ether_ip6multicast_min, ETHER_ADDR_LEN);
1234 1.146 dyoung memcpy(addrhi, ether_ip6multicast_max, ETHER_ADDR_LEN);
1235 1.44 itojun } else {
1236 1.44 itojun ETHER_MAP_IPV6_MULTICAST(&sin6->sin6_addr, addrlo);
1237 1.146 dyoung memcpy(addrhi, addrlo, ETHER_ADDR_LEN);
1238 1.44 itojun }
1239 1.44 itojun break;
1240 1.44 itojun #endif
1241 1.3 hpeyerl
1242 1.3 hpeyerl default:
1243 1.146 dyoung return EAFNOSUPPORT;
1244 1.60 enami }
1245 1.146 dyoung return 0;
1246 1.60 enami }
1247 1.60 enami
1248 1.60 enami /*
1249 1.60 enami * Add an Ethernet multicast address or range of addresses to the list for a
1250 1.60 enami * given interface.
1251 1.60 enami */
1252 1.60 enami int
1253 1.155 dyoung ether_addmulti(const struct sockaddr *sa, struct ethercom *ec)
1254 1.60 enami {
1255 1.231 ozaki struct ether_multi *enm, *_enm;
1256 1.60 enami u_char addrlo[ETHER_ADDR_LEN];
1257 1.60 enami u_char addrhi[ETHER_ADDR_LEN];
1258 1.237 skrll int error = 0;
1259 1.231 ozaki
1260 1.231 ozaki /* Allocate out of lock */
1261 1.248 ozaki enm = kmem_alloc(sizeof(*enm), KM_SLEEP);
1262 1.60 enami
1263 1.245 msaitoh ETHER_LOCK(ec);
1264 1.155 dyoung error = ether_multiaddr(sa, addrlo, addrhi);
1265 1.231 ozaki if (error != 0)
1266 1.231 ozaki goto out;
1267 1.3 hpeyerl
1268 1.3 hpeyerl /*
1269 1.3 hpeyerl * Verify that we have valid Ethernet multicast addresses.
1270 1.3 hpeyerl */
1271 1.186 yamt if (!ETHER_IS_MULTICAST(addrlo) || !ETHER_IS_MULTICAST(addrhi)) {
1272 1.231 ozaki error = EINVAL;
1273 1.231 ozaki goto out;
1274 1.3 hpeyerl }
1275 1.252 maxv
1276 1.3 hpeyerl /*
1277 1.3 hpeyerl * See if the address range is already in the list.
1278 1.3 hpeyerl */
1279 1.270 yamaguch _enm = ether_lookup_multi(addrlo, addrhi, ec);
1280 1.231 ozaki if (_enm != NULL) {
1281 1.3 hpeyerl /*
1282 1.3 hpeyerl * Found it; just increment the reference count.
1283 1.3 hpeyerl */
1284 1.231 ozaki ++_enm->enm_refcount;
1285 1.231 ozaki error = 0;
1286 1.231 ozaki goto out;
1287 1.3 hpeyerl }
1288 1.252 maxv
1289 1.3 hpeyerl /*
1290 1.239 ozaki * Link a new multicast record into the interface's multicast list.
1291 1.3 hpeyerl */
1292 1.252 maxv memcpy(enm->enm_addrlo, addrlo, ETHER_ADDR_LEN);
1293 1.252 maxv memcpy(enm->enm_addrhi, addrhi, ETHER_ADDR_LEN);
1294 1.3 hpeyerl enm->enm_refcount = 1;
1295 1.22 is LIST_INSERT_HEAD(&ec->ec_multiaddrs, enm, enm_list);
1296 1.22 is ec->ec_multicnt++;
1297 1.252 maxv
1298 1.3 hpeyerl /*
1299 1.3 hpeyerl * Return ENETRESET to inform the driver that the list has changed
1300 1.3 hpeyerl * and its reception filter should be adjusted accordingly.
1301 1.3 hpeyerl */
1302 1.231 ozaki error = ENETRESET;
1303 1.231 ozaki enm = NULL;
1304 1.252 maxv
1305 1.231 ozaki out:
1306 1.245 msaitoh ETHER_UNLOCK(ec);
1307 1.231 ozaki if (enm != NULL)
1308 1.248 ozaki kmem_free(enm, sizeof(*enm));
1309 1.231 ozaki return error;
1310 1.3 hpeyerl }
1311 1.3 hpeyerl
1312 1.3 hpeyerl /*
1313 1.3 hpeyerl * Delete a multicast address record.
1314 1.3 hpeyerl */
1315 1.3 hpeyerl int
1316 1.155 dyoung ether_delmulti(const struct sockaddr *sa, struct ethercom *ec)
1317 1.3 hpeyerl {
1318 1.29 mrg struct ether_multi *enm;
1319 1.60 enami u_char addrlo[ETHER_ADDR_LEN];
1320 1.60 enami u_char addrhi[ETHER_ADDR_LEN];
1321 1.237 skrll int error;
1322 1.3 hpeyerl
1323 1.245 msaitoh ETHER_LOCK(ec);
1324 1.155 dyoung error = ether_multiaddr(sa, addrlo, addrhi);
1325 1.231 ozaki if (error != 0)
1326 1.231 ozaki goto error;
1327 1.3 hpeyerl
1328 1.3 hpeyerl /*
1329 1.252 maxv * Look up the address in our list.
1330 1.3 hpeyerl */
1331 1.270 yamaguch enm = ether_lookup_multi(addrlo, addrhi, ec);
1332 1.3 hpeyerl if (enm == NULL) {
1333 1.231 ozaki error = ENXIO;
1334 1.231 ozaki goto error;
1335 1.3 hpeyerl }
1336 1.3 hpeyerl if (--enm->enm_refcount != 0) {
1337 1.3 hpeyerl /*
1338 1.3 hpeyerl * Still some claims to this record.
1339 1.3 hpeyerl */
1340 1.231 ozaki error = 0;
1341 1.231 ozaki goto error;
1342 1.3 hpeyerl }
1343 1.252 maxv
1344 1.3 hpeyerl /*
1345 1.3 hpeyerl * No remaining claims to this record; unlink and free it.
1346 1.3 hpeyerl */
1347 1.13 mycroft LIST_REMOVE(enm, enm_list);
1348 1.22 is ec->ec_multicnt--;
1349 1.245 msaitoh ETHER_UNLOCK(ec);
1350 1.252 maxv kmem_free(enm, sizeof(*enm));
1351 1.231 ozaki
1352 1.3 hpeyerl /*
1353 1.3 hpeyerl * Return ENETRESET to inform the driver that the list has changed
1354 1.3 hpeyerl * and its reception filter should be adjusted accordingly.
1355 1.3 hpeyerl */
1356 1.231 ozaki return ENETRESET;
1357 1.252 maxv
1358 1.231 ozaki error:
1359 1.245 msaitoh ETHER_UNLOCK(ec);
1360 1.231 ozaki return error;
1361 1.66 thorpej }
1362 1.66 thorpej
1363 1.170 dyoung void
1364 1.170 dyoung ether_set_ifflags_cb(struct ethercom *ec, ether_cb_t cb)
1365 1.170 dyoung {
1366 1.170 dyoung ec->ec_ifflags_cb = cb;
1367 1.170 dyoung }
1368 1.170 dyoung
1369 1.276 msaitoh void
1370 1.276 msaitoh ether_set_vlan_cb(struct ethercom *ec, ether_vlancb_t cb)
1371 1.276 msaitoh {
1372 1.276 msaitoh
1373 1.276 msaitoh ec->ec_vlan_cb = cb;
1374 1.276 msaitoh }
1375 1.276 msaitoh
1376 1.272 msaitoh static int
1377 1.272 msaitoh ether_ioctl_reinit(struct ethercom *ec)
1378 1.272 msaitoh {
1379 1.272 msaitoh struct ifnet *ifp = &ec->ec_if;
1380 1.272 msaitoh int error;
1381 1.272 msaitoh
1382 1.272 msaitoh switch (ifp->if_flags & (IFF_UP | IFF_RUNNING)) {
1383 1.272 msaitoh case IFF_RUNNING:
1384 1.272 msaitoh /*
1385 1.272 msaitoh * If interface is marked down and it is running,
1386 1.272 msaitoh * then stop and disable it.
1387 1.272 msaitoh */
1388 1.272 msaitoh (*ifp->if_stop)(ifp, 1);
1389 1.272 msaitoh break;
1390 1.272 msaitoh case IFF_UP:
1391 1.272 msaitoh /*
1392 1.272 msaitoh * If interface is marked up and it is stopped, then
1393 1.272 msaitoh * start it.
1394 1.272 msaitoh */
1395 1.272 msaitoh return (*ifp->if_init)(ifp);
1396 1.272 msaitoh case IFF_UP | IFF_RUNNING:
1397 1.272 msaitoh error = 0;
1398 1.272 msaitoh if (ec->ec_ifflags_cb != NULL) {
1399 1.272 msaitoh error = (*ec->ec_ifflags_cb)(ec);
1400 1.272 msaitoh if (error == ENETRESET) {
1401 1.272 msaitoh /*
1402 1.272 msaitoh * Reset the interface to pick up
1403 1.272 msaitoh * changes in any other flags that
1404 1.272 msaitoh * affect the hardware state.
1405 1.272 msaitoh */
1406 1.272 msaitoh return (*ifp->if_init)(ifp);
1407 1.272 msaitoh }
1408 1.272 msaitoh } else
1409 1.272 msaitoh error = (*ifp->if_init)(ifp);
1410 1.272 msaitoh return error;
1411 1.272 msaitoh case 0:
1412 1.272 msaitoh break;
1413 1.272 msaitoh }
1414 1.272 msaitoh
1415 1.272 msaitoh return 0;
1416 1.272 msaitoh }
1417 1.272 msaitoh
1418 1.66 thorpej /*
1419 1.66 thorpej * Common ioctls for Ethernet interfaces. Note, we must be
1420 1.66 thorpej * called at splnet().
1421 1.66 thorpej */
1422 1.66 thorpej int
1423 1.147 christos ether_ioctl(struct ifnet *ifp, u_long cmd, void *data)
1424 1.66 thorpej {
1425 1.272 msaitoh struct ethercom *ec = (void *)ifp;
1426 1.193 msaitoh struct eccapreq *eccr;
1427 1.66 thorpej struct ifreq *ifr = (struct ifreq *)data;
1428 1.170 dyoung struct if_laddrreq *iflr = data;
1429 1.170 dyoung const struct sockaddr_dl *sdl;
1430 1.170 dyoung static const uint8_t zero[ETHER_ADDR_LEN];
1431 1.169 dyoung int error;
1432 1.66 thorpej
1433 1.66 thorpej switch (cmd) {
1434 1.170 dyoung case SIOCINITIFADDR:
1435 1.191 matt {
1436 1.191 matt struct ifaddr *ifa = (struct ifaddr *)data;
1437 1.191 matt if (ifa->ifa_addr->sa_family != AF_LINK
1438 1.247 msaitoh && (ifp->if_flags & (IFF_UP | IFF_RUNNING)) !=
1439 1.247 msaitoh (IFF_UP | IFF_RUNNING)) {
1440 1.170 dyoung ifp->if_flags |= IFF_UP;
1441 1.170 dyoung if ((error = (*ifp->if_init)(ifp)) != 0)
1442 1.170 dyoung return error;
1443 1.170 dyoung }
1444 1.66 thorpej #ifdef INET
1445 1.191 matt if (ifa->ifa_addr->sa_family == AF_INET)
1446 1.191 matt arp_ifinit(ifp, ifa);
1447 1.252 maxv #endif
1448 1.169 dyoung return 0;
1449 1.191 matt }
1450 1.66 thorpej
1451 1.66 thorpej case SIOCSIFMTU:
1452 1.82 thorpej {
1453 1.82 thorpej int maxmtu;
1454 1.82 thorpej
1455 1.82 thorpej if (ec->ec_capabilities & ETHERCAP_JUMBO_MTU)
1456 1.82 thorpej maxmtu = ETHERMTU_JUMBO;
1457 1.82 thorpej else
1458 1.82 thorpej maxmtu = ETHERMTU;
1459 1.82 thorpej
1460 1.82 thorpej if (ifr->ifr_mtu < ETHERMIN || ifr->ifr_mtu > maxmtu)
1461 1.169 dyoung return EINVAL;
1462 1.169 dyoung else if ((error = ifioctl_common(ifp, cmd, data)) != ENETRESET)
1463 1.169 dyoung return error;
1464 1.169 dyoung else if (ifp->if_flags & IFF_UP) {
1465 1.88 thorpej /* Make sure the device notices the MTU change. */
1466 1.169 dyoung return (*ifp->if_init)(ifp);
1467 1.169 dyoung } else
1468 1.169 dyoung return 0;
1469 1.82 thorpej }
1470 1.66 thorpej
1471 1.66 thorpej case SIOCSIFFLAGS:
1472 1.170 dyoung if ((error = ifioctl_common(ifp, cmd, data)) != 0)
1473 1.170 dyoung return error;
1474 1.272 msaitoh return ether_ioctl_reinit(ec);
1475 1.274 ozaki case SIOCGIFFLAGS:
1476 1.274 ozaki error = ifioctl_common(ifp, cmd, data);
1477 1.274 ozaki if (error == 0) {
1478 1.274 ozaki /* Set IFF_ALLMULTI for backcompat */
1479 1.274 ozaki ifr->ifr_flags |= (ec->ec_flags & ETHER_F_ALLMULTI) ?
1480 1.274 ozaki IFF_ALLMULTI : 0;
1481 1.274 ozaki }
1482 1.274 ozaki return error;
1483 1.193 msaitoh case SIOCGETHERCAP:
1484 1.193 msaitoh eccr = (struct eccapreq *)data;
1485 1.193 msaitoh eccr->eccr_capabilities = ec->ec_capabilities;
1486 1.193 msaitoh eccr->eccr_capenable = ec->ec_capenable;
1487 1.193 msaitoh return 0;
1488 1.272 msaitoh case SIOCSETHERCAP:
1489 1.272 msaitoh eccr = (struct eccapreq *)data;
1490 1.272 msaitoh if ((eccr->eccr_capenable & ~ec->ec_capabilities) != 0)
1491 1.272 msaitoh return EINVAL;
1492 1.272 msaitoh if (eccr->eccr_capenable == ec->ec_capenable)
1493 1.272 msaitoh return 0;
1494 1.272 msaitoh #if 0 /* notyet */
1495 1.272 msaitoh ec->ec_capenable = (ec->ec_capenable & ETHERCAP_CANTCHANGE)
1496 1.272 msaitoh | (eccr->eccr_capenable & ~ETHERCAP_CANTCHANGE);
1497 1.272 msaitoh #else
1498 1.272 msaitoh ec->ec_capenable = eccr->eccr_capenable;
1499 1.272 msaitoh #endif
1500 1.272 msaitoh return ether_ioctl_reinit(ec);
1501 1.66 thorpej case SIOCADDMULTI:
1502 1.169 dyoung return ether_addmulti(ifreq_getaddr(cmd, ifr), ec);
1503 1.66 thorpej case SIOCDELMULTI:
1504 1.169 dyoung return ether_delmulti(ifreq_getaddr(cmd, ifr), ec);
1505 1.160 dyoung case SIOCSIFMEDIA:
1506 1.160 dyoung case SIOCGIFMEDIA:
1507 1.275 msaitoh if (ec->ec_mii != NULL)
1508 1.275 msaitoh return ifmedia_ioctl(ifp, ifr, &ec->ec_mii->mii_media,
1509 1.275 msaitoh cmd);
1510 1.275 msaitoh else if (ec->ec_ifmedia != NULL)
1511 1.275 msaitoh return ifmedia_ioctl(ifp, ifr, ec->ec_ifmedia, cmd);
1512 1.275 msaitoh else
1513 1.169 dyoung return ENOTTY;
1514 1.275 msaitoh break;
1515 1.170 dyoung case SIOCALIFADDR:
1516 1.170 dyoung sdl = satocsdl(sstocsa(&iflr->addr));
1517 1.170 dyoung if (sdl->sdl_family != AF_LINK)
1518 1.170 dyoung ;
1519 1.170 dyoung else if (ETHER_IS_MULTICAST(CLLADDR(sdl)))
1520 1.170 dyoung return EINVAL;
1521 1.170 dyoung else if (memcmp(zero, CLLADDR(sdl), sizeof(zero)) == 0)
1522 1.170 dyoung return EINVAL;
1523 1.170 dyoung /*FALLTHROUGH*/
1524 1.170 dyoung default:
1525 1.161 dyoung return ifioctl_common(ifp, cmd, data);
1526 1.66 thorpej }
1527 1.169 dyoung return 0;
1528 1.3 hpeyerl }
1529 1.200 joerg
1530 1.215 christos /*
1531 1.215 christos * Enable/disable passing VLAN packets if the parent interface supports it.
1532 1.215 christos * Return:
1533 1.215 christos * 0: Ok
1534 1.215 christos * -1: Parent interface does not support vlans
1535 1.215 christos * >0: Error
1536 1.215 christos */
1537 1.215 christos int
1538 1.215 christos ether_enable_vlan_mtu(struct ifnet *ifp)
1539 1.215 christos {
1540 1.215 christos int error;
1541 1.215 christos struct ethercom *ec = (void *)ifp;
1542 1.215 christos
1543 1.215 christos /* Parent does not support VLAN's */
1544 1.215 christos if ((ec->ec_capabilities & ETHERCAP_VLAN_MTU) == 0)
1545 1.215 christos return -1;
1546 1.215 christos
1547 1.215 christos /*
1548 1.215 christos * Parent supports the VLAN_MTU capability,
1549 1.215 christos * i.e. can Tx/Rx larger than ETHER_MAX_LEN frames;
1550 1.215 christos * enable it.
1551 1.215 christos */
1552 1.215 christos ec->ec_capenable |= ETHERCAP_VLAN_MTU;
1553 1.215 christos
1554 1.215 christos /* Interface is down, defer for later */
1555 1.215 christos if ((ifp->if_flags & IFF_UP) == 0)
1556 1.215 christos return 0;
1557 1.215 christos
1558 1.215 christos if ((error = if_flags_set(ifp, ifp->if_flags)) == 0)
1559 1.215 christos return 0;
1560 1.215 christos
1561 1.215 christos ec->ec_capenable &= ~ETHERCAP_VLAN_MTU;
1562 1.215 christos return error;
1563 1.215 christos }
1564 1.215 christos
1565 1.215 christos int
1566 1.215 christos ether_disable_vlan_mtu(struct ifnet *ifp)
1567 1.215 christos {
1568 1.215 christos int error;
1569 1.215 christos struct ethercom *ec = (void *)ifp;
1570 1.215 christos
1571 1.215 christos /* We still have VLAN's, defer for later */
1572 1.215 christos if (ec->ec_nvlans != 0)
1573 1.215 christos return 0;
1574 1.215 christos
1575 1.215 christos /* Parent does not support VLAB's, nothing to do. */
1576 1.215 christos if ((ec->ec_capenable & ETHERCAP_VLAN_MTU) == 0)
1577 1.215 christos return -1;
1578 1.215 christos
1579 1.215 christos /*
1580 1.215 christos * Disable Tx/Rx of VLAN-sized frames.
1581 1.215 christos */
1582 1.215 christos ec->ec_capenable &= ~ETHERCAP_VLAN_MTU;
1583 1.250 maxv
1584 1.215 christos /* Interface is down, defer for later */
1585 1.215 christos if ((ifp->if_flags & IFF_UP) == 0)
1586 1.215 christos return 0;
1587 1.215 christos
1588 1.215 christos if ((error = if_flags_set(ifp, ifp->if_flags)) == 0)
1589 1.215 christos return 0;
1590 1.215 christos
1591 1.215 christos ec->ec_capenable |= ETHERCAP_VLAN_MTU;
1592 1.215 christos return error;
1593 1.215 christos }
1594 1.215 christos
1595 1.200 joerg static int
1596 1.200 joerg ether_multicast_sysctl(SYSCTLFN_ARGS)
1597 1.200 joerg {
1598 1.200 joerg struct ether_multi *enm;
1599 1.200 joerg struct ifnet *ifp;
1600 1.200 joerg struct ethercom *ec;
1601 1.223 ozaki int error = 0;
1602 1.200 joerg size_t written;
1603 1.223 ozaki struct psref psref;
1604 1.237 skrll int bound;
1605 1.233 ozaki unsigned int multicnt;
1606 1.233 ozaki struct ether_multi_sysctl *addrs;
1607 1.233 ozaki int i;
1608 1.200 joerg
1609 1.200 joerg if (namelen != 1)
1610 1.200 joerg return EINVAL;
1611 1.200 joerg
1612 1.223 ozaki bound = curlwp_bind();
1613 1.223 ozaki ifp = if_get_byindex(name[0], &psref);
1614 1.223 ozaki if (ifp == NULL) {
1615 1.223 ozaki error = ENODEV;
1616 1.223 ozaki goto out;
1617 1.223 ozaki }
1618 1.200 joerg if (ifp->if_type != IFT_ETHER) {
1619 1.223 ozaki if_put(ifp, &psref);
1620 1.200 joerg *oldlenp = 0;
1621 1.223 ozaki goto out;
1622 1.200 joerg }
1623 1.200 joerg ec = (struct ethercom *)ifp;
1624 1.200 joerg
1625 1.200 joerg if (oldp == NULL) {
1626 1.223 ozaki if_put(ifp, &psref);
1627 1.233 ozaki *oldlenp = ec->ec_multicnt * sizeof(*addrs);
1628 1.223 ozaki goto out;
1629 1.200 joerg }
1630 1.200 joerg
1631 1.233 ozaki /*
1632 1.233 ozaki * ec->ec_lock is a spin mutex so we cannot call sysctl_copyout, which
1633 1.251 maxv * is sleepable, while holding it. Copy data to a local buffer first
1634 1.251 maxv * with the lock taken and then call sysctl_copyout without holding it.
1635 1.233 ozaki */
1636 1.233 ozaki retry:
1637 1.233 ozaki multicnt = ec->ec_multicnt;
1638 1.251 maxv
1639 1.251 maxv if (multicnt == 0) {
1640 1.251 maxv if_put(ifp, &psref);
1641 1.251 maxv *oldlenp = 0;
1642 1.251 maxv goto out;
1643 1.251 maxv }
1644 1.251 maxv
1645 1.252 maxv addrs = kmem_zalloc(sizeof(*addrs) * multicnt, KM_SLEEP);
1646 1.200 joerg
1647 1.245 msaitoh ETHER_LOCK(ec);
1648 1.251 maxv if (multicnt != ec->ec_multicnt) {
1649 1.251 maxv /* The number of multicast addresses has changed */
1650 1.245 msaitoh ETHER_UNLOCK(ec);
1651 1.233 ozaki kmem_free(addrs, sizeof(*addrs) * multicnt);
1652 1.233 ozaki goto retry;
1653 1.233 ozaki }
1654 1.233 ozaki
1655 1.233 ozaki i = 0;
1656 1.200 joerg LIST_FOREACH(enm, &ec->ec_multiaddrs, enm_list) {
1657 1.233 ozaki struct ether_multi_sysctl *addr = &addrs[i];
1658 1.233 ozaki addr->enm_refcount = enm->enm_refcount;
1659 1.233 ozaki memcpy(addr->enm_addrlo, enm->enm_addrlo, ETHER_ADDR_LEN);
1660 1.233 ozaki memcpy(addr->enm_addrhi, enm->enm_addrhi, ETHER_ADDR_LEN);
1661 1.233 ozaki i++;
1662 1.233 ozaki }
1663 1.245 msaitoh ETHER_UNLOCK(ec);
1664 1.233 ozaki
1665 1.233 ozaki error = 0;
1666 1.233 ozaki written = 0;
1667 1.233 ozaki for (i = 0; i < multicnt; i++) {
1668 1.233 ozaki struct ether_multi_sysctl *addr = &addrs[i];
1669 1.233 ozaki
1670 1.233 ozaki if (written + sizeof(*addr) > *oldlenp)
1671 1.200 joerg break;
1672 1.233 ozaki error = sysctl_copyout(l, addr, oldp, sizeof(*addr));
1673 1.200 joerg if (error)
1674 1.200 joerg break;
1675 1.233 ozaki written += sizeof(*addr);
1676 1.233 ozaki oldp = (char *)oldp + sizeof(*addr);
1677 1.200 joerg }
1678 1.233 ozaki kmem_free(addrs, sizeof(*addrs) * multicnt);
1679 1.233 ozaki
1680 1.223 ozaki if_put(ifp, &psref);
1681 1.200 joerg
1682 1.200 joerg *oldlenp = written;
1683 1.223 ozaki out:
1684 1.223 ozaki curlwp_bindx(bound);
1685 1.200 joerg return error;
1686 1.200 joerg }
1687 1.200 joerg
1688 1.234 ozaki static void
1689 1.234 ozaki ether_sysctl_setup(struct sysctllog **clog)
1690 1.200 joerg {
1691 1.200 joerg const struct sysctlnode *rnode = NULL;
1692 1.200 joerg
1693 1.200 joerg sysctl_createv(clog, 0, NULL, &rnode,
1694 1.200 joerg CTLFLAG_PERMANENT,
1695 1.200 joerg CTLTYPE_NODE, "ether",
1696 1.200 joerg SYSCTL_DESCR("Ethernet-specific information"),
1697 1.200 joerg NULL, 0, NULL, 0,
1698 1.200 joerg CTL_NET, CTL_CREATE, CTL_EOL);
1699 1.200 joerg
1700 1.200 joerg sysctl_createv(clog, 0, &rnode, NULL,
1701 1.200 joerg CTLFLAG_PERMANENT,
1702 1.200 joerg CTLTYPE_NODE, "multicast",
1703 1.200 joerg SYSCTL_DESCR("multicast addresses"),
1704 1.200 joerg ether_multicast_sysctl, 0, NULL, 0,
1705 1.200 joerg CTL_CREATE, CTL_EOL);
1706 1.200 joerg }
1707 1.203 ozaki
1708 1.203 ozaki void
1709 1.203 ozaki etherinit(void)
1710 1.203 ozaki {
1711 1.234 ozaki
1712 1.278 msaitoh #ifdef DIAGNOSTIC
1713 1.203 ozaki mutex_init(&bigpktpps_lock, MUTEX_DEFAULT, IPL_NET);
1714 1.278 msaitoh #endif
1715 1.234 ozaki ether_sysctl_setup(NULL);
1716 1.203 ozaki }
1717